WO2017201925A1 - 一种监测用户终端网络性能的方法、装置及系统 - Google Patents

一种监测用户终端网络性能的方法、装置及系统 Download PDF

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Publication number
WO2017201925A1
WO2017201925A1 PCT/CN2016/099322 CN2016099322W WO2017201925A1 WO 2017201925 A1 WO2017201925 A1 WO 2017201925A1 CN 2016099322 W CN2016099322 W CN 2016099322W WO 2017201925 A1 WO2017201925 A1 WO 2017201925A1
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Prior art keywords
user terminal
real
network performance
monitoring
time
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PCT/CN2016/099322
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English (en)
French (fr)
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陈李
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中兴通讯股份有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/14Network analysis or design
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/04Arrangements for maintaining operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a method, device and system for monitoring network performance of a user terminal.
  • a single computer is used to monitor a single terminal, that is, one computer can only connect one terminal at a time.
  • the hardware and space costs are huge
  • the same computer can replace the monitored terminals in turn (the cost of time is huge), which is completely unsatisfactory.
  • the technical problem solved by the solution provided by the embodiment of the present invention is that the network performance of all the user terminals cannot be monitored at the same time, resulting in poor analysis network performance.
  • the monitoring device receives real-time network parameters sent by each user terminal by performing real-time monitoring on the monitored user terminals;
  • the monitoring device analyzes the real-time network parameters sent by each user terminal to obtain real-time network performance of each user terminal.
  • the network parameter is stored as a file. According to the stored file, the network parameter storage network parameter is stored as a file, and the network parameters sent by each user terminal are offline analyzed according to the stored file, and the historical network performance of each user terminal is obtained. .
  • the monitoring device performs real-time monitoring on the monitored user terminal, including:
  • the monitoring device simultaneously performs real-time monitoring on the user terminal by establishing a data link between the monitoring device and the monitored user terminal.
  • the method further comprises: the monitoring device transmitting the obtained real-time network performance and/or historical network performance of each user terminal to the network management.
  • the method further comprises: the monitoring device transmitting the real-time network performance and/or the historical network performance of the user terminal to the third-party application device by receiving a request for the network performance of the user terminal sent by the third-party application device.
  • the monitoring module is configured to receive real-time network parameters sent by each user terminal by performing real-time monitoring on the monitored user terminal;
  • the network performance analysis module is configured to perform real-time network performance of each user terminal by analyzing real-time network parameters sent by each user terminal.
  • the network performance analysis module is further configured to perform offline analysis on network parameters sent by each user terminal according to the stored file by storing the received network parameters sent by each user terminal as a file, and obtaining each Historical network performance of user terminals.
  • the monitoring module is configured to establish a data link with the monitored user terminal, and perform real-time monitoring on the user terminal, and receive real-time network parameters sent by each user terminal.
  • the device further comprises:
  • the sending unit is configured to send the obtained real-time network performance and/or historical network performance of each user terminal to the network management.
  • the sending unit is further configured to send the real-time network performance and/or historical network performance of the user terminal to the third-party application device by receiving a request for the network performance of the user terminal sent by the third-party application device.
  • a user terminal configured to acquire and transmit real-time network parameters during user operations
  • the system further comprises:
  • the network management is configured to receive real-time network performance and/or historical network performance of each user terminal transmitted by the monitoring device.
  • the system further comprises:
  • the third-party application device is configured to receive real-time network performance and/or historical network performance of the user terminal transmitted by the monitoring device by transmitting a request for monitoring the performance of the user terminal network to the monitoring device.
  • the monitoring device comprises:
  • the monitoring module is configured to receive real-time network parameters sent by each user terminal by performing real-time monitoring on the monitored user terminal;
  • the network performance analysis module is configured to analyze real-time network parameters sent by each user terminal, obtain real-time network performance of each user terminal, and/or perform offline analysis on the saved network parameters to obtain a historical network of each user terminal. performance.
  • a data link is established between a monitoring device and a plurality of user terminals, which saves a large amount of hardware and space costs, and improves monitoring efficiency.
  • FIG. 1 is a flowchart of a method for monitoring network performance of a user terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an apparatus for monitoring network performance of a user terminal according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a system for monitoring network performance of a user terminal according to an embodiment of the present invention
  • FIG. 4 is a schematic diagram of relationship between a diagnostic data collection unit and a user terminal in FIG. 3 according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a diagnostic data access unit of FIG. 3 according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a script engine unit of FIG. 3 according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of an external application access unit of FIG. 3 according to an embodiment of the present invention.
  • FIG. 1 is a flowchart of a method for monitoring network performance of a user terminal according to an embodiment of the present invention. As shown in FIG. 1 , the method includes:
  • Step S101 The monitoring device receives real-time network parameters sent by each user terminal by performing real-time monitoring on the monitored user terminals.
  • Step S102 The monitoring device analyzes the real-time network parameters sent by each user terminal to obtain real-time network performance of each user terminal.
  • the embodiment of the present invention further includes: the monitoring device stores the received network parameters sent by each user terminal as a file, and performs offline analysis on the network parameters sent by each user terminal according to the stored file, to obtain an image of each user terminal. Historical network performance.
  • the storage file may store the network parameters sent by one user terminal into a corresponding file according to user requirements, or store network parameters sent by multiple user terminals into one file, and store each user with a file. The network parameters sent by the terminal are marked for storage.
  • the real-time monitoring of the monitored user terminal by the monitoring device includes: establishing a data link between the monitoring device and the monitored user terminal, so that the monitoring device simultaneously monitors the user terminal in real time.
  • the embodiment of the present invention further includes: the monitoring device sends the obtained real-time network performance and/or historical network performance of each user terminal to the network management.
  • the embodiment of the invention further includes that the monitoring device sends the real-time network performance and/or the historical network performance of the user terminal to the third-party application device by receiving a request for the network performance of the user terminal sent by the third-party application device.
  • the embodiment of the present invention can use the third-party application device to send a network performance request about the user terminal according to different needs of the user, and obtain real-time network performance and/or historical network performance of the user terminal.
  • FIG. 2 is a schematic diagram of an apparatus for monitoring network performance of a user terminal according to an embodiment of the present invention, including: a monitoring module, configured to perform real-time monitoring on a monitored user terminal, and receive real-time sent by each user terminal.
  • the network parameter analysis module is configured to analyze real-time network parameters sent by each user terminal to obtain real-time network performance of each user terminal.
  • the monitoring module is specifically configured to establish a data link with the monitored user terminal, perform real-time monitoring on the user terminal, and receive real-time network parameters sent by each user terminal.
  • the network performance analysis module is further configured to perform offline analysis on network parameters sent by each user terminal according to the stored file by storing the received network parameters sent by each user terminal as a file, and obtain each user terminal. Historical network performance.
  • the embodiment of the present invention further includes: a sending unit, configured to send the obtained real-time network performance and/or historical network performance of each user terminal to the network management.
  • the sending unit is further configured to send the real-time network performance and/or historical network performance of the user terminal to the third-party application device by receiving a request for the network performance of the user terminal sent by the third-party application device.
  • FIG. 3 is a schematic diagram of a system for monitoring network performance of a user terminal according to an embodiment of the present invention.
  • the user terminal is configured to acquire and send real-time network parameters during user operation; and the monitoring device is configured to pass The monitored user terminal performs real-time monitoring, receives real-time network parameters sent by each user terminal, and analyzes the received real-time network parameters and/or saved network parameters to obtain real-time network performance and/or real-time network performance of each user terminal. Historical network performance.
  • the monitoring device includes: a monitoring module, configured to receive real-time network parameters sent by each user terminal by performing real-time monitoring on the monitored user terminal; and a network performance analysis module, configured to send each user terminal
  • the real-time network parameters are analyzed to obtain real-time network performance of each user terminal and/or offline analysis of the saved network parameters to obtain historical network performance of each user terminal.
  • the embodiment of the invention further includes: a network management system, configured to receive real-time network performance and/or historical network performance of each user terminal sent by the monitoring device.
  • the embodiment of the invention further includes: a third-party application device, configured to receive real-time network performance and/or historical network performance of the user terminal sent by the monitoring device by sending a request for the performance of the user terminal network to the monitoring device.
  • a third-party application device configured to receive real-time network performance and/or historical network performance of the user terminal sent by the monitoring device by sending a request for the performance of the user terminal network to the monitoring device.
  • the embodiment of the present invention further includes: a sending unit, configured to send the obtained real-time network performance and/or historical network performance of each user terminal to the network management system and/or receive a request for network performance of the user terminal sent by the third-party application device. Transmitting the real-time network performance and/or historical network performance to the third-party application device.
  • the user terminal includes a plurality of terminals.
  • the monitoring module includes a diagnostic data collecting unit, and the diagnostic data collecting unit can simultaneously connect multiple terminals and receive real-time network parameters of each terminal.
  • the network performance analysis module includes a diagnostic data access unit and a script engine unit, and the diagnostic data access unit can store the network parameters of the user terminal acquired by the diagnostic data collection unit in a customized manner, and the storage manner can be The network parameters for each terminal are stored as one file or the network parameters of all terminals are stored in one file.
  • the script engine unit is an embedded script engine for executing a user's script to complete user function customization.
  • the sending unit includes an output data management unit and an external application access unit, where the output data management unit is configured to manage the output of the real-time network performance and the historical network performance obtained by the script engine unit, that is, directly sent to the network management or via an external application.
  • the incoming unit is sent to a third-party application device.
  • the external application access unit is configured to connect with a third-party application device, so that the third-party application device obtains real-time network performance and historical network performance obtained by the management script engine unit.
  • FIG. 4 is a schematic diagram showing the relationship between the diagnostic data collection unit and the user terminal.
  • the diagnostic data collection unit includes a plurality of terminal management units, and each terminal management unit is connected to a plurality of terminals. Taking 1000 terminals simultaneously as an embodiment, each 20 terminals are grouped into groups, and each group of terminals is controlled by the same terminal management unit, so 1000 terminals are connected to the same diagnostic data collection unit via 50 terminal management units. That is, the diagnostic data collection unit can simultaneously receive real-time network parameters of 1000 terminals via the terminal management unit.
  • FIG. 5 A schematic diagram of the diagnostic data access module of FIG. 3 is shown in FIG. 5, and the diagnostic data access unit includes a plurality of memory controllers. Similarly, in the case of simultaneously storing 1000 terminals, each storage controller corresponds to the terminal management unit in FIG. 5, and 1000 terminals are connected to the same diagnostic data storage unit via 50 storage controllers. In a specific implementation process, the correspondence between the storage controller and the terminal management module can be flexibly set.
  • the schematic diagram of the structure of the script engine unit in FIG. 3 is as shown in FIG. 6.
  • the script engine unit includes a plurality of script parsing units, and the user can write a script to customize the parsing data, and multiple script parsing units can be executed in parallel.
  • the script parsing unit can have one or more data sources. That is, it may be a real-time network parameter derived from the diagnostic data acquisition unit, or may be an offline network parameter file derived from the diagnostic data storage unit.
  • FIG. 3 is a schematic structural diagram of an external application access unit.
  • the external application access unit manages the connection of the third-party application, and requests specific data from the output data management unit according to different needs of the user.
  • multiple external applications can be accessed to meet concurrent operations of different applications.
  • the external application access mode can be flexibly configured, including but not limited to remote terminal protocol Telnet, TCP (Transmission Control Protocol), and UDP (User Datagram Protocol).
  • a plurality of user terminals are simultaneously monitored by one monitoring device, which saves a large amount of hardware and space costs, and improves monitoring efficiency.
  • the user terminal may be a user's mobile phone, a tablet computer, a computer, etc.
  • the monitoring device may be a computer, a server, or the like.
  • the above apparatus for monitoring network performance of a user terminal is configured to perform the above method of monitoring network performance of a user terminal.
  • the means for monitoring network performance of the user terminal may include at least one of a processing component, a memory, a power component, an input and output interface, and a communication component.
  • the processing component can perform all operations of the device that monitors the performance of the network of the user terminal, such as data communications, recording operations, and the like.
  • Processing components may include one or more processors for executing instructions to implement all or a portion of the steps above.
  • the processing component can include one or more modules that facilitate interaction between the processing component and other components.
  • the memory is configured to store various types of data to support operation of a device that monitors network performance of the user terminal. Examples of such data include instructions, messages, etc. of any application or method running on a device that monitors the performance of the user terminal network.
  • the memory can be implemented using any type of volatile or non-volatile memory device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM erasable programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk or Optical Disk.
  • the power component provides power to various components of the device that monitors the performance of the user terminal network.
  • Input and output interfaces are used for input and output operations with peripheral devices.
  • the communication component communicates with other devices by means of wireless or wired means for monitoring the performance of the user terminal network.
  • non-transitory computer readable storage medium comprising instructions, such as a memory comprising instructions executable by means for monitoring network performance of a user terminal to perform the above method.
  • the non-transitory computer readable storage medium described above may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, and an optical data storage device.
  • the invention is applicable to the field of wireless communication technology, and is used for simultaneously monitoring a plurality of user terminals, which saves a large amount of hardware and space costs, and improves monitoring efficiency.

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Abstract

本发明公开了一种监测用户终端网络性能的方法、装置及系统,涉及无线通信技术领域,其方法包括:监测设备通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;监测设备通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。本发明通过同时监测多个终端,节省了大量的硬件和空间成本,提高了监测效率。 (图1)

Description

一种监测用户终端网络性能的方法、装置及系统 技术领域
本发明涉及无线通讯技术领域,特别涉及一种监测用户终端网络性能的方法、装置及系统。
背景技术
在无线通讯领域,用户数呈爆发式的增长。为了向客户提供优质的产品,在实验室必须模拟与商用系统一致的多用户环境。在多用户环境中,如何同时监测所有用户网络参数,如何自动分析网络性能,始终是一大难题。
目前,对于用户网络参数的监测,采用单个电脑监控单个终端,即一台电脑同时只能连接一个终端。针对多用户环境,只能单个使用与终端相同数量的电脑(硬件和空间成本耗费巨大),或者同一电脑依次更换被监控的终端(时间成本耗费巨大),完全无法满足要求。
发明内容
根据本发明实施例提供的方案解决的技术问题是因无法同时监测所有用户终端的网络参数导致分析网络性能差。
根据本发明实施例提供的一种监测用户终端网络性能的方法,包括:
监测设备通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
监测设备通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
网络参数存储为文件,根据所存储的文件,对网络参数存网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。
优选地,所述监测设备对被监测的用户终端进行实时监测包括:
通过将监测设备与被监测的用户终端之间分别建立数据链路,使所述监测设备同时对所述用户终端进行实时监测。
优选地,该方法还包括,监测设备将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。
优选地,该方法还包括,监测设备通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。
根据本发明实施例提供的一种监测用户终端网络性能的装置,包括:
监测模块,设置为通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
网络性能分析模块,设置为通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
优选地,所述网络性能分析模块还设置为通过将收到的每个用户终端发送的网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。
优选地,所述监测模块设置为通过与被监测的用户终端之间分别建立数据链路,并对所述用户终端进行实时监测,接收每个用户终端发送的实时网络参数。
优选地,该装置还包括:
发送单元,设置为将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。
优选地,所述发送单元还设置为通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。
根据本发明实施例提供的一种监测用户终端网络性能的系统,包括:
用户终端,设置为在用户操作期间获取并发送实时网络参数;
通过对被监测的通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数,并对接收的实时网络参数和/或保存的网络参数其进行分析,得到每个用户终端的实时网络性能和/或历史网络性能。
优选地,该系统还包括:
网管,设置为接收监测装置发送的每个用户终端的实时网络性能和/或历史网络性能。
优选地,该系统还包括:
第三方应用设备,设置为通过向监测装置发送关于用户终端网络性能的请求,接收监测装置发送的用户终端的实时网络性能和/或历史网络性能。
优选地,所述监测装置包括:
监测模块,设置为通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
网络性能分析模块,设置为通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能和/或对保存的网络参数进行离线分析,得到每个用户终端的历史网络性能。
根据本发明实施例提供的方案,通过一个监测设备与多个用户终端建立数据链路,节省了大量的硬件和空间成本,同时提高了监控效率。
附图说明
图1是本发明实施例提供的一种监测用户终端网络性能的方法流程图;
图2是本发明实施例提供的一种监测用户终端网络性能的装置示意图;
图3是本发明实施例提供的一种监测用户终端网络性能的系统示意图;
图4是本发明实施例提供的图3中诊断数据采集单元与用户终端的关系示意图;
图5是本发明实施例提供的图3中诊断数据存取单元的结构示意图;
图6是本发明实施例提供的图3中脚本引擎单元的结构示意图;
图7是本发明实施例提供的图3中外部应用接入单元的结构示意图。
具体实施方式
以下结合附图对本发明的优选实施例进行详细说明,应当理解,以下所说明的优选实施例仅用于说明和解释本发明,并不用于限定本发明。
图1是本发明实施例提供的一种监测用户终端网络性能的方法流程图,如图1所示,包括:
步骤S101:监测设备通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
步骤S102:监测设备通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
本发明实施例还包括,监测设备将收到的每个用户终端发送的网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。其中,所述的存储文件按用户需求,可以将一个用户终端发送的网络参数存储到相对应的一个文件中,也可以将多个用户终端发送的网络参数存储到一个文件,并对每个用户终端发送的网络参数进行标记存储。
其中,所述监测设备对被监测的用户终端进行实时监测包括:通过将监测设备与被监测的用户终端之间分别建立数据链路,使所述监测设备同时对所述用户终端进行实时监测。
本发明实施例还包括,监测设备将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。
本发明实施例还包括,监测设备通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。其中,本发明实施例可以根据用户的不同需求,利用第三方应用设备发送关于用户终端网络性能请求,获取用户终端的实时网络性能和/或历史网络性能。
图2是本发明实施例提供的一种监测用户终端网络性能的装置示意图,包括:监测模块,用于通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时 网络参数;网络性能分析模块,用于通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
其中,所述监测模块具体用于通过与被监测的用户终端之间分别建立数据链路,并对所述用户终端进行实时监测,接收每个用户终端发送的实时网络参数。所述网络性能分析模块还用于通过将收到的每个用户终端发送的网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。
本发明实施例还包括:发送单元,用于将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。具体地说,所述发送单元还用于通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。
图3是本发明实施例提供的一种监测用户终端网络性能的系统示意图,如图3所示,包括用户终端,用于在用户操作期间获取并发送实时网络参数;监测装置,用于通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数,并对接收的实时网络参数和/或保存的网络参数其进行分析,得到每个用户终端的实时网络性能和/或历史网络性能。其中,所述监测装置包括:监测模块,用于通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;网络性能分析模块,用于通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能和/或对保存的网络参数进行离线分析,得到每个用户终端的历史网络性能。
本发明实施例还包括:网管,用于接收监测装置发送的每个用户终端的实时网络性能和/或历史网络性能。
本发明实施例还包括:第三方应用设备,用于通过向监测装置发送关于用户终端网络性能的请求,接收监测装置发送的用户终端的实时网络性能和/或历史网络性能。
本发明实施例还包括:发送单元,用于将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管和/或通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送所述实时网络性能和/或历史网络性能。
具体地说,所述用户终端包括多个终端。所述监测模块包括诊断数据采集单元,诊断数据采集单元可同时连接多个终端并接收每个终端的实时网络参数。所述网络性能分析模块包括诊断数据存取单元和脚本引擎单元,所述诊断数据存取单元,可按用户定制的方式,将诊断数据采集单元获取的用户终端的网络参数进行存储,存储方式可以为每个终端的网络参数分别存储为一个文件或是所有终端的网络参数都存储到一个文件中。所述脚本引擎单元,为一个内嵌的脚本引擎,用于执行用户的脚本,从而完成用户功能定制。也就是说,既可以对诊断数据采集单元发送的实时网络参数进行分析,得到实时网络性能,又可以对诊断数据存取单元保存的网络参数进行离线分 析,得到历史网络性能。所述发送单元包括输出数据管理单元以及外部应用接入单元,所述输出数据管理单元用于管理脚本引擎单元得到的实时网络性能和历史网络性能的输出,即直接发送到网管还是经由外部应用接入单元发送到第三方应用设备。所述外部应用接入单元,用于与第三方应用设备连接,使得第三方应用设备获取管理脚本引擎单元得到的实时网络性能和历史网络性能。
图3中所述诊断数据采集单元与用户终端的关系示意图如图4所示,诊断数据采集单元包括多个终端管理单元,每个终端管理单元与多个终端连接。以同时监控1000个终端为实施例,将每20个终端分为一组,每组终端受同一终端管理单元控制,因此1000个终端经由50个终端管理单元接入到同一诊断数据采集单元中。即,诊断数据采集单元经由终端管理单元可以同时接收1000个终端的实时网络参数。
图3中的所述诊断数据存取模块的示意图如图5所示,诊断数据存取单元包括多个存储控制器。同样以同时存储1000个终端为实施例,将每个存储控制器与图5中的终端管理单元相对应,1000个终端经由50个存储控制器接入到同一诊断数据存储单元中。在具体的实施过程中,存储控制器与终端管理模块的对应关系可以灵活设置。
图3中的脚本引擎单元的结构示意图如图6所示,所述脚本引擎单元包括多个脚本解析单元,用户可以编写脚本定制解析数据,可以有多个脚本解析单元并行执行。脚本解析单元可以有一个或多个数据源。即可以是来源于诊断数据采集单元的实时网络参数,也可以是来源于诊断数据存储单元的离线网络参数文件。
图3中的外部应用接入单元的结构示意图如图7所示,外部应用接入单元管理第三方应用的连接,并根据用户的不同需求向输出数据管理单元请求特定的数据。同时可以有多个外部应用接入,满足不同应用并发的操作。外部应用接入的方式可以灵活配置,包括但不限于远程终端协议Telnet、TCP(Transmission Control Protocol,传输控制协议)、UDP(User Datagram Protocol,用户数据报协议)。
根据本发明实施例提供的方案,通过一个监测设备同时监测多个用户终端,节省了大量的硬件和空间成本,同时提高了监控效率。
上述用户终端可以是用户的手机、平板电脑、计算机等,所述监测设备可以是计算机、服务器等。
上述监测用户终端网络性能的装置被配置为执行上述监测用户终端网络性能的方法。
该监测用户终端网络性能的装置可以包括处理部件、存储器、电力部件、输入输出接口、通信部件中的至少一个。
处理部件可以执行监测用户终端网络性能的装置的全部操作,例如数据通信、记录操作等。处理部件可以包括一个或多个处理器,用以执行指令以实施上述方法中的所有或部分步骤。而且,处理部件可以包括利于处理部件与其他部件之间交互的一个或多个模块。
存储器被配置为存储各种类型的数据以支持监测用户终端网络性能的装置的操作。这种数据的示例包括在监测用户终端网络性能的装置上运行的任意应用或方法的指令、消息等。存储器可以使用任何类型的易失性或非易失性存储器件或其组合来实施,例如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
电力组件为监测用户终端网络性能的装置的各种组件提供电力。
输入输出接口用于与外围设备进行输入输出操作。
通信部件利用无线或有线方式使监测用户终端网络性能的装置与其他设备进行通信。
在示例性实施例中,还提供了一种包括指令的非临时性计算机可读存储介质,例如包括指令的存储器,上述指令可由监测用户终端网络性能的装置执行以完成上述方法。例如,上述非临时性计算机可读存储介质可以是ROM、随机存取存储器(RAM)、CD-ROM、磁带、软盘和光数据存储设备等。
尽管上文对本发明进行了详细说明,但是本发明不限于此,本技术领域技术人员可以根据本发明的原理进行各种修改。因此,凡按照本发明原理所作的修改,都应当理解为落入本发明的保护范围。
工业实用性
本发明适用于无线通讯技术领域,用以同时监测多个用户终端,节省了大量的硬件和空间成本,同时提高了监控效率。

Claims (14)

  1. 一种监测用户终端网络性能的方法,包括:
    监测设备通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
    监测设备通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
  2. 根据权利要求1所述的方法,还包括,监测设备将收到的每个用户终端发送的网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。
  3. 根据权利要求1或2所述的方法,所述监测设备对被监测的用户终端进行实时监测包括:
    通过将监测设备与被监测的用户终端之间分别建立数据链路,使所述监测设备同时对所述用户终端进行实时监测。
  4. 根据权利要求2所述的方法,还包括,监测设备将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。
  5. 根据权利要求2所述的方法,还包括,监测设备通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。
  6. 一种监测用户终端网络性能的装置,包括:
    监测模块,设置为通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
    网络性能分析模块,设置为通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能。
  7. 根据权利要求6所述的装置,所述网络性能分析模块还设置为通过将收到的每个用户终端发送的网络参数存储为文件,根据所存储的文件,对每个用户终端发送的网络参数进行离线分析,得到每个用户终端的历史网络性能。
  8. 根据权利要求6或7所述的装置,所述监测模块设置为通过与被监测的用户终端之间分别建立数据链路,并对所述用户终端进行实时监测,接收每个用户终端发送的实时网络参数。
  9. 根据权利要求8所述的装置,还包括:
    发送单元,设置为将得到的每个用户终端的实时网络性能和/或历史网络性能发送给网管。
  10. 根据权利要求9所述的装置,所述发送单元还设置为通过接收第三方应用设备发送的关于用户终端网络性能的请求,向所述第三方应用设备发送用户终端的实时网络性能和/或历史网络性能。
  11. 一种监测用户终端网络性能的系统,包括:
    用户终端,设置为在用户操作期间获取并发送实时网络参数;
    监测装置,设置为通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数,并对接收的实时网络参数和/或保存的网络参数其进行分析,得到每个用户终端的实时网络性能和/或历史网络性能。
  12. 根据权利要求11所述的系统,还包括:
    网管,设置为接收监测装置发送的每个用户终端的实时网络性能和/或历史网络性能。
  13. 根据权利要求11或12所述的系统,还包括:
    第三方应用设备,设置为通过向监测装置发送关于用户终端网络性能的请求,接收监测装置发送的用户终端的实时网络性能和/或历史网络性能。
  14. 根据权利要求11所述的系统,所述监测装置包括:
    监测模块,设置为通过对被监测的用户终端进行实时监测,接收每个用户终端发送的实时网络参数;
    网络性能分析模块,设置为通过对每个用户终端发送的实时网络参数进行分析,得到每个用户终端的实时网络性能和/或对保存的网络参数进行离线分析,得到每个用户终端的历史网络性能。
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